English

Muon Emittance Exchange with a Potato Slicer

Accelerator Physics 2015-04-16 v1

Abstract

We propose a novel scheme for final muon ionization cooling with quadrupole doublets followed by emittance exchange in vacuum to achieve the small beam sizes needed by a muon collider. A flat muon beam with a series of quadrupole doublet half cells appears to provide the strong focusing required for final cooling. Each quadrupole doublet has a low beta region occupied by a dense, low Z absorber. After final cooling, normalized transverse, longitudinal, and angular momentum emittances of 0.100, 2.5, and 0.200 mm-rad are exchanged into 0.025, 70, and 0.0 mm-rad. A skew quadrupole triplet transforms a round muon bunch with modest angular momentum into a flat bunch with no angular momentum. Thin electrostatic septa efficiently slice the flat bunch into 17 parts. The 17 bunches are interleaved into a 3.7 meter long train with RF deflector cavities. Snap bunch coalescence combines the muon bunch train longitudinally in a 21 GeV ring in 55 microseconds, one quarter of a synchrotron oscillation period. A linear long wavelength RF bucket gives each bunch a different energy causing the bunches to drift in the ring until they merge into one bunch and can be captured in a short wavelength RF bucket with a 13% muon decay loss and a packing fraction as high as 87%.

Keywords

Cite

@article{arxiv.1504.03972,
  title  = {Muon Emittance Exchange with a Potato Slicer},
  author = {D. J. Summers and T. L. Hart and J. G. Acosta and L. M. Cremaldi and S. J. Oliveros and L. P. Perera and D. V. Neuffer},
  journal= {arXiv preprint arXiv:1504.03972},
  year   = {2015}
}

Comments

13 pages, 7 figures

R2 v1 2026-06-22T09:16:39.287Z